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Developing energy calculation methodology and calculation tool validations: Application in air-heated ice rink arenas

机译:开发能量计算方法论和计算工具验证:在空气加热的冰溜冰场竞技场

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The ice-pad refrigeration and space heating energy demand in air-heated ice-rink arenas dominate the total energy demand. Accordingly, the overall energy usage is a weak function of ambient temperature. This makes it possible to analyze the energy demand in steady-state conditions. This study aims to develop a simplified calculation tool to enable non-expert users to accomplish the following: First, they can roughly calculate the energy requirements/costs of ice rinks using a simplified calculation method. Second, they can calculate energy performance value, which is mandatory for obtaining energy performance certificates. Third, they can clarify discrepancies between real and official energy performance values. The study verifies the applicability of the tool, which is analyzed by applying theoretical and physical principles in steady-state conditions. The tool is intended to be applied in the early design phase to assist authorities in developing clear vision about energy consumption/costs and making right choices. The accuracy of the tool is validated against dynamic energy simulation. The tool results deviate upto 10% with IDA-ICE results in refrigeration and space heating demands but approximately 30% in cooling/dehumidification demands, where steady-state calculation causes considerable faults. However, the tool assesses overall yearly energy costs with 8% inconsistency compared with simulation results. (C) 2020 Elsevier B.V. All rights reserved.
机译:空气加热冰溜冰场中的冰垫制冷和空间加热能量需求主导了总能源需求。因此,整体能量使用是环境温度的弱功能。这使得可以分析稳态条件下的能量需求。本研究旨在开发简化的计算工具,使非专家用户能够完成以下内容:首先,它们可以使用简化的计算方法大致计算冰溜冰场的能量需求/成本。其次,它们可以计算能量性能值,这是获取能源绩效证书的强制性。第三,他们可以澄清实际和官方能源绩效价值之间的差异。该研究验证了该工具的适用性,通过在稳态条件下应用理论和物理原则来分析。该工具旨在应用于早期设计阶段,以协助当局开发有关能源消费/成本的明确愿景,并做出正确的选择。该工具的准确性因动态能量仿真而验证。刀具结果偏离了10%的IDA-Ice导致制冷和空间加热需求,但冷却/除湿需求约为30%,其中稳态计算导致相当大的故障。但是,与仿真结果相比,该工具评估了8%不一致的全年能源成本。 (c)2020 Elsevier B.v.保留所有权利。

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